The present invention relates to a hand tool, and in particular, to a multifunctional stapler.
The PCT patent WO 2005/102613A1, entitled “Stapler With Adapter”, discloses a stapler suitable for four specifications of staples (a T-shaped staple, a U-shaped staple, a barbed staple, a ‘-’-shaped staple), which controls a sliding member to move up and down, while driving an adjusting member to contact staples selectively, so as to achieve the purpose that the stapler can be applied to staples of different thicknesses. It has the disadvantages that the sliding member in this design solution has to be firstly manipulated to slide up and down, and then a positioning member on the sliding member is operated to implement positioning, so that this stapler needs two operations to achieve the positioning effects, making it inconvenient for a user to operate. Meanwhile, this design solution also has the problem of an over-complicated structure, in that the positioning structure of the sliding member is too complicated, and the production costs of processing and assembling are relatively high.
The Chinese patent 101439509B, entitled “Stapler Suitable For Various Staples”, discloses a stapler suitable for various staple specifications, which may rapidly adjust a distance between an adjusting member and a staple box, such that staples of different thicknesses can be secured in the staple box. It has the disadvantages that there is only such a structure for adjusting the distance between the adjusting member and the staple box that the stapler may be suitable for the staples with different widths (or thicknesses), but not provided with a solution for adjusting a strike force of a striking member, so that regardless of a thickness of an object to be stapled, the striking member strikes the staples with the same strike force. Once the object to be stapled is relatively thick, the staples cannot penetrate through all the objects to be stapled, which may affect the stapling effects. Meanwhile, a runner structure is required in this design solution, the requirement for the processing and assembling accuracy is high, and the production cost is relatively high.
A new multifunctional stapler is commercially desired, which is suitable for use with staples of different specifications and widths, and is capable of adjusting the strike force so as to better achieve puncture effects.
An objective of the present invention is to provide a multifunctional stapler which solves the problems existing in the prior art of poor stapling effects, complicate structures, relatively high production costs and inconvenient operations.
In order to solve the above technical problems, the present invention provides a multifunctional stapler, including a housing; a nailing portion arranged at a front end of the housing; and a toggling device, a part of which being arranged inside the housing, and a part of which extending to the outside of the housing; the nailing portion includes: a staple feeding member, arranged at a front end of the bottom of the housing; a staple feeding groove arranged on the surface at one side of the staple feeding member, for receiving staples; a striking member, a part of which being inserted into the staple feeding groove, the toggling device controlling the striking member to strike the staples; and an adjusting device, a part of which being arranged outside the housing, for adjusting a depth of the staple feeding groove.
Further, the housing includes a first through hole penetrating through a front wall of the housing; a second through hole penetrating through a top wall of the housing; a third through hole penetrating through a side wall at the upper part of the housing; a first slide groove, for receiving the striking member which is slidable inside the first slide groove for striking member; and a second slide groove for receiving a second adjusting member.
Further, the staple feeding member further includes a fourth through hole, penetrating through a wall of the staple feeding groove; the adjusting device includes a first adjusting member, at one side of which a lug of the first adjusting member being provided and inserted into the fourth through hole of the staple feeding member, at another side of which a stepped groove being provided; the second adjusting member sliding in the second slide groove of the housing; a first push button penetrating through the first through hole of the housing, a part of which protruding outside the housing, another part of which being connected to the second adjusting member; and a press plate, one end of which being connected to the first push button and/or the second adjusting member, the other end of which being inserted into the stepped groove and being contacting with the surface of the stepped groove.
Further, the bottom surface of the stepped groove includes a first stepped surface; a second stepped surface; and an inclined surface connecting the first stepped surface with the second stepped surface.
Further, the first through hole of the housing includes a first position and a second position. When the first push button is located at the first position, the press plate is contacting with the first stepped surface; a distance of the front end of the lug of the first adjusting member inserted into the third through hole of the staple feeding member is less than or equal to a depth of the third through hole of the staple feeding member; when the first push button is located at the second position, the press plate is contacting with the second stepped surface; the front end of the lug of the first adjusting member protrudes from the bottom surface of the staple feeding groove.
Further, the striking member includes a driven plate; and a striking plate, one end of which being fixed to the driven plate, the other end of which being inserted into the staple feeding groove.
Further, the driven plate includes a first body; a fifth through hole of the driven plate, penetrating through the first body; and a sixth through hole of the driven plate, penetrating through the first body.
The toggling device includes a resilient plate, one end of which being fixed to the housing, and the other end of which being inserted into the sixth through hole of the driven plate; a second push button passing through the second through hole of the housing, one part of which protruding outside the housing, and another part of which contacting with one side surface of the resilient plate; and an elastic gasket fixed to the housing and contacting with another side surface of the resilient plate.
Further, the second through hole of the housing includes a third position and a fourth position; among at least one of contacting points between the second push button and the resilient plate, one point of tangency closest to the striking member is a fulcrum for the deformation of the resilient plate; the distance between the fulcrum and the striking member when the second push button is located at the third position is greater than the distance between the fulcrum and the striking member when the second push button is located at the fourth position.
Further, the second push button includes a toggle base, at least one arc protrusion is arranged on the surface of the toggle base facing towards the resilient plate and contacting with the one side surface of the resilient plate; and a toggle block connected to the toggle base and passing through the second through hole of the housing, protruding outside the housing.
Further, the contacting point between the second push button and the resilient plate is adjacent to the middle part of the resilient plate; the contacting point between the elastic gasket and the resilient plate is adjacent to the front end of the resilient plate.
Further, the toggling device includes a first axle, two ends of which being perpendicularly connected to the inner side of two opposite side walls of the housing respectively; a second axle, two ends of which being perpendicularly connected to the inner side of two opposite side walls of the housing, the second axle being parallel to the first axle; a toggling member, which rotates around the first axle and/or the second axle after being stressed; a first elastic member, one end of which being connected to the housing, the other end of which being connected to the top of the toggling member; a joint between the first elastic member and the toggling member being adjacent to the front end of the housing.
Further, the toggling member includes a second body; a protruding portion of the toggling member, arranged at a front end of the second body, and inserted into the fifth through hole of the driven plate; a first fixture slot of the toggling member arranged at the bottom of the toggling member body, and tangent to the surface of the first axle; and a hole of the toggling member arranged in the middle of the second body, provided around the outside of the second axle.
Further, the toggling member further includes a second fixture slot, arranged in the middle of the second body of the toggling member; the multifunctional stapler further includes a barbed steel wire arranged cross the top of the housing, the two ends of which being hinged to the outer side of the two housing plates of the housing respectively; the steel wire being clamped to the second fixture slot of the toggling member.
Further, the multifunctional stapler further includes a third slide groove arranged at the bottom of the housing, one end of which corresponding to the staple feeding groove; and the staple containing portion slidably mounted to the third slide groove, for putting and fixing the staples in and to the staple feeding groove.
Further, two opposite inner side walls of the third slide groove are provided with linear recesses respectively; the staple containing portion includes a base of the staple containing portion; two or more parallel first ribs, fixed to the top surface of the base of the staple containing portion; the front end of the first ribs being arranged opposite to a notch of the staple feeding groove; and a linear convex rib protruding from outer surface of two side walls of the base of the staple containing portion and inserted into the linear recesses.
Further, the staple containing portion further includes a pushing block, slidably mounted to the outside of the first ribs; and a second elastic member, one end of which is fixed to the pushing block, and the other end of which is fixed to a rear end of the base of the staple containing portion.
Further, the multifunctional stapler includes a slot arranged at the bottom of the third slide groove the staple containing portion further includes an elastic key arranged at the top portion of the rear end of the base of the staple containing portion; a fixture block arranged at the top portion of the rear end of the base of the staple containing portion and clamped to the slot; when the elastic key is pressed down, the fixture block is disengaged from the slot.
Further, the housing includes a holding hole, penetrating through the middle portion of the housing; and/or a clamp hook fixed to the surface of the housing; and the staples used in the stapler are T-shaped staples, U-shaped staples, barbed staples or ‘-’-shaped staples.
The present invention provides a multifunctional stapler, capable of adjusting a depth of the staple feeding groove, such that the staples with different widths may be stably positioned in the staple feeding groove, thus being struck out, so as to realize stapling effects. The present invention may further adjust the strike force according to the thickness of the object to be stapled, thereby realizing better striking effects. The multifunctional stapler according to the present invention has a simple structure, a relatively low production cost, convenient operations, and a wide application range, can be used for striking staples of various specifications and shapes, such as T-shaped staples, ‘-’-shaped staples, U-shaped staples, or barbed staples with different widths and heights.
The present invention will be described more fully for those skilled in the art hereinafter with reference to the accompanying drawings by introducing one of the preferable embodiments of the present invention, for the purpose of clarity and better understanding of the techniques. This invention may be embodied in various different forms and the invention should not be construed as being limited to the embodiments set forth herein.
In the accompanying drawings elements with identical structure are marked with the same reference numerals, and like elements with similar structure or function are marked throughout with like reference numerals, respectively. The dimension and thickness of each of the elements in the accompanying drawings are arbitrarily shown, and the invention does not define the dimension and thickness of each element. Certain elements may be shown somewhat exaggerated in thickness in the interest of clarity.
Directional relative terms mentioned in the present invention, such as “upper” “lower”, “front”, “back”, “left”, “right”, “inside”, “outside”, “side” and the like, are only directions by referring to the accompanying drawings, and are merely used to explain and describe the present invention, but the present invention is not limited thereto.
It will be understood that when an element is referred to as being “on/above” another element, it can be directly on the other element, or there may be an intermediate element on which it is placed, and the intermediate element is placed on the other element. When an element is referred to as being “mounted to” or “connected to” another element, the two elements can be understood as being directly “mounted” or “connected”, or one element via an intermediate element to be indirectly “mounted to” or “connected to” the other element.
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The staple feeding member 21 is arranged at the front end of the bottom of the housing 1; the staple feeding groove 211 is arranged on the surface at one side of the staple feeding member 21, for receiving the staples of various specifications and various widths. The staple feeding member 21 further includes a fourth through hole 212 of the staple feeding member 21, penetrating through the bottom surface of the staple feeding groove 211. The staple feeding member 21 is arranged vertically, and a notch of the staple feeding groove 211 faces towards the staple containing portion 4.
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When the multifunctional stapler according to the present embodiment needs to be loaded with staples with a relatively large width, the first push button 233 needs to be switched to the first position 131. As shown in
When the staples with a relatively small width need to be loaded in the multifunctional stapler according to the present embodiment, the first push button 233 needs to be switched to the second position 132. As shown in
During the position adjustment of the first push button 233 between the first position 131 and the second position 132, when the first push button 233 is toggled from the first position 131 to the second position 132, or when the first push button 233 is toggled from the second position 132 to the first position 131, the press plate 234 slides along the smooth inclined surface 2316, thereby switching the first push button 233 between the first position 131 and the second position 132.
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The toggling device 3 further includes a first axle 34, a second axle 35, a toggling member 36 and a first elastic member 37. The two ends of the first axle 34 are connected to the inner side walls of the two housing plates 11, 12 respectively; the two ends of the second axle 35 are connected to the inner side walls of the two housing plates 11, 12 respectively, and the second axle 35 is parallel with the first axle 34. The toggling member 36 rotates around the first axle 34 and/or the second axle 35 after stressed.
The toggling member 36 includes a toggling member body 361, a protruding portion of the toggling member 362, a first fixture slot 363 of the toggling member 36 and a waist-type hole of the toggling member 364.
The protruding portion of the toggling member 362 is arranged at the front end of the toggling member body 361, and inserted into the fifth through hole 2212 of the driven plate 221, the front end of the protruding portion of the toggling member 362 is partially arc, and the distance thereof inserted into the fifth through hole 2212 of the driven plate 221 is relatively short.
The first fixture slot 363 is arranged in the middle of the bottom of the toggling member body 361, tangent to the surface of the first axle 34, the first axle 34 is a rotating fulcrum of the toggling member body 361; the waist-type hole of the toggling member 364 is arranged in the middle segment of the toggling member body 361, and sheaths the second axle 35, for assisting the protruding portion of the toggling member 362 to slide out from the fifth through hole 2212 of the driven plate 221. Meanwhile, the rotation range of the toggling member body 361 is limited to some extent.
The first elastic member 37 is a spiral spring, one end of which is connected to the inner wall at the top portion of the housing 1, and the other end of which is connected to the top of the toggling member body 361. The joint between the first elastic member 37 and the toggling member 36 is adjacent to the front end of the housing 1. When the toggling member 36 is rotated due to a force, the front end of the toggling member body 361 presses against the first elastic member 37, to make it deformed. When the force on the toggling member 36 disappears, the first elastic member 37 recovers, such that the toggling member body 361 is reset, and the protruding portion of the toggling member 362 slides into the fifth through hole 2212 of the driven plate 221 again.
In the present embodiment, a steel wire 38 is further included, and is arranged at the top of the housing 1 in a barbed shape, with two ends hinged to the outer side of the two housing plates 11, 12 respectively, for limiting the position of the toggling device 3. The toggling member 36 includes a second fixture slot 365 of the toggling member 36, arranged in the middle segment of the toggling member body 361. The second fixture slot 365 is a clamp hook-shaped groove, and the steel wire 38 is clamped to the second fixture slot 365, for limiting the rotation range of the toggling member body 361. After the toggling member body 361 is ensured to be reset, the protruding portion of the toggling member 362 slides into the fifth through hole 2212 of the driven plate 221.
In the multifunctional stapler according to the present embodiment, when in use, in the case that the toggling member 36 is toggled by a user, the protruding portion of the toggling member 362 can drive the striking member 22 to move upwards in the first slide groove 16, and the resilient plate 31 is deformed in the meanwhile. After the striking plate 222 is extracted from the staple feeding groove 211, the staples arranged in the staple containing portion 4 are pushed to the staple feeding groove 211 in the horizontal direction, to be fixed. After the striking member 22 moves by a certain distance, the second axle 35 slides in the waist-type hole 364, such that the protruding portion of the toggling member 362 slides out of the fifth through hole 2212 of the driven plate 221. Under the action of the resilient plate 31, the striking member 22 slides downwards along the first slide groove 16 rapidly, and the striking plate 222 at the lower end of the striking member 22 slides into the staple feeding groove 211, and rapidly strikes the upper end of the staple located in the staple feeding groove 211, to realize the staple striking effect. After striking, under the action of the resilient plate 31, the striking member 22 can be rapidly reset; under the action of the first elastic member 37, the protruding portion of the toggling member 362 slides into the fifth through hole 2212 of the driven plate 221. The elastic gasket 33 is made of an elastic material. The above-mentioned process functions to buffer an impact force of the resilient plate 31, to limit the travel of the resilient plate 31 and the striking member 22, and to prevent the striking plate 222 from sliding by an overlong distance in the staple feeding groove 211 and affecting the reset of the striking member 22.
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If the user needs to use the multifunctional stapler according to the present embodiment to staple the object to be stapled with a relatively small thickness, it is necessary to adjust the second push button 32 to the third position 141. As shown in
If the user needs to use the multifunctional stapler according to the present embodiment to staple the object to be stapled with a relatively large thickness, it is necessary to adjust the second push button 32 to the fourth position 142. When the second push button 32 is located at the fourth position 142, the distance of the deformation fulcrum 3231 from the striking member 22 is relatively small. The elastic force generated by the resilient plate 31 is relatively large, and the strike force of the striking plate 222 applied to the staple is relatively large.
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The staple containing portion 4 further includes a pushing block 45 and a second elastic member 46. The second elastic member 46 is preferably a spiral spring, one end of which is fixed to the pushing block 45, the other end of which is fixed to the rear end of the base of the staple containing portion 41. The second elastic member 46 may be mounted in the slit 49 between the two adjacent ribs. The pushing block 45 is slidably mounted to the ribs 41, 42 and 43; the pushing block 45 is driven by the elastic force of the second elastic member 46 to generate a forward pushing force F1.
The multifunctional stapler further includes a slot (not shown in the drawings), arranged at the bottom of the third slide groove 18. The staple containing portion 4 further includes an elastic key 47 and a clamping block 48 which are integrated. The elastic key 47 is arranged at the top of the rear end of the base of the staple containing portion 41; the clamping block 48 is arranged at the top of the rear end of the base of the staple containing portion 41, and clamped to the slot (not shown in the drawings).
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The staple at the most front end of the staple group is tangent to the striking plate 222 in the staple feeding groove 211 under the action of the pushing block 45. When the toggling member body 361 is rotated, the striking plate 222 is disengaged from the staple feeding groove 211, and the staple at the most front end of the staple group 5 is put in the staple feeding groove 211 under the action of the pushing force F1.
Before or after staple loading, the user may adjust the position of the first push button 233 according to a single width of the selected staple, so as to adjust the depth of the staple feeding groove 211, and adjust the position of the second push button 32 according to the thickness of the object to be stapled, so as to adjust the strike force of the striking member 22.
The present embodiment has the advantages that a multifunctional stapler is provided, capable of adjusting a depth of the staple feeding groove, such that the staples with different widths may be stably positioned in the staple feeding groove, thus being struck out, so as to realize stapling effects. The present invention may further adjust the strike force according to the thickness of the object to be stapled, thereby realizing better striking effects. The multifunctional stapler according to the present invention has a simple structure, a relatively low production cost, convenient operations, and a wide application range, can be used for striking staples of various specifications and shapes, such as T-shaped staples, ‘-’-shaped staples, U-shaped staples, or barbed staples with different widths and specifications.
The invention has been exemplified above with reference to specific embodiments. It should be understood that a multitude of modifications and variations can be made by a common person skilled in the art without departing from the conception of the present invention, and those modifications and variations shall be deemed within the protection scope of the invention.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/104560 | 9/29/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2019/061344 | 4/4/2019 | WO | A |
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Number | Date | Country | |
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20190337134 A1 | Nov 2019 | US |